US20120240716A1 - Electronic clutch pedal assembly having varying resistance - Google Patents
Electronic clutch pedal assembly having varying resistance Download PDFInfo
- Publication number
- US20120240716A1 US20120240716A1 US13/426,026 US201213426026A US2012240716A1 US 20120240716 A1 US20120240716 A1 US 20120240716A1 US 201213426026 A US201213426026 A US 201213426026A US 2012240716 A1 US2012240716 A1 US 2012240716A1
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- United States
- Prior art keywords
- pedal
- end cap
- pedal arm
- pair
- support portion
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- G—PHYSICS
- G05—CONTROLLING; REGULATING
- G05G—CONTROL DEVICES OR SYSTEMS INSOFAR AS CHARACTERISED BY MECHANICAL FEATURES ONLY
- G05G1/00—Controlling members, e.g. knobs or handles; Assemblies or arrangements thereof; Indicating position of controlling members
- G05G1/30—Controlling members actuated by foot
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T74/00—Machine element or mechanism
- Y10T74/20—Control lever and linkage systems
- Y10T74/20528—Foot operated
Definitions
- the present invention relates to an electronic clutch pedal assembly and, more particularly, an electronic clutch pedal assembly having varying resistance.
- the dashed line L 1 illustrates a force curve of a conventional clutch pedal assembly having a mechanical linkage between the clutch pedal and the clutch assembly.
- the conventional force curve rises slowly to a peak of about 50% of the travel path of the clutch pedal at which point the disengagement of the pressure plate with the clutch disc occurs.
- the present invention provides an electronic clutch pedal assembly for use with an automotive vehicle, which overcomes the above mentioned problems of the previously known electronic clutch pedal assemblies.
- the electronic clutch pedal assembly includes a housing bracket for mounting the pedal assembly to the vehicle, a pedal arm, and a biasing device.
- the pedal arm includes an upper end and a pedal pad at a lower end.
- the upper end of the pedal arm is pivotally supported within the housing bracket for movement along a pedal path between an undepressed position and a depressed position.
- the biasing device includes a first end cap pivotally attached to the housing bracket and a second end cap pivotally attached to the pedal arm.
- the biasing device includes a compressible member disposed between the first end cap and the second end cap. The compressible member biases the pedal arm towards the undepressed position. Upon depression of the pedal arm from the undepressed position towards the depressed position, the compressible member is compressed as the biasing device rotates so as to vary the resistance of the compressible member along the pedal path.
- the electronic clutch pedal assembly is provided with a biasing device that is both rotatable and compressible.
- the simultaneous rotation of the biasing device and the compression of the compressible member varies the resistance over the pedal path so as to provides a′′ clutch pedal which accurately simulates the “pedal feel” of a clutch pedal having a mechanical clutch linkage.
- FIG. 1 is a graphical representation of a force curve for a mechanically linked clutch pedal and the inventive electronic clutch pedal assembly
- FIG. 2 is a front side perspective of the inventive pedal assembly
- FIG. 3 is a rear side perspective of the inventive pedal assembly
- FIG. 4 is a partially exploded rear side perspective view of the pedal assembly
- FIG. 5 is a partial cross-sectional view illustrating the pedal assembly with the pedal arm in the undepressed position
- FIG. 6 is a partial cross-sectional view illustrating the pedal assembly with the pedal arm in the depressed position
- FIG. 7 is a side perspective view illustrating an alternative embodiment of the inventive pedal assembly
- FIG. 8 is a rear perspective view of the alternative embodiment of the inventive pedal assembly
- FIG. 9 is a partial cross-sectional view of the alternative pedal assembly with the pedal arm in the undepressed position
- FIG. 10 is a partial cross-sectional view illustrating the alternative pedal assembly with the pedal arm in the depressed position.
- FIG. 11 is a partial perspective exploded view of the insert and the biasing device of the alternative pedal assembly.
- the present invention has utility as an electronic clutch pedal assembly for use with an automotive vehicle which overcomes the above mentioned disadvantages.
- the inventive electronic clutch pedal assembly includes a biasing device which simulates the feel of a clutch pedal having a conventional mechanical linkage to a clutch assembly.
- the biasing device includes a compressible member disposed between a first end cap and a second end cap. The first end cap is pivotally attached to a housing bracket and the second end cap is pivotally attached to a pedal arm. During depression of the pedal arm, the simultaneous rotation of the biasing device and the compression of the compressible member provide a variable pedal resistance over the pedal path which simulates a clutch pedal assembly having a conventional mechanical linkage.
- the clutch pedal assembly 10 includes a housing bracket 12 for mounting the pedal assembly 10 to a portion of the automotive vehicle.
- the housing bracket 12 is attached to a portion of the firewall (not shown) of the vehicle.
- the housing bracket 12 includes a base portion 14 , a pair of side walls 16 , and a traverse upper portion 18 which extends between the pair of side walls 16 .
- the base portion 14 includes at least one aperture 20 for securing the housing bracket 12 to the vehicle using any known fastener or attaching means to secure one object to another illustratively including bolting, screwing, welding, or adhesive.
- the housing bracket 12 has a generally boxlike structure having an interior defined by the base portion 14 , pair of side walls 16 , and the traversing upper wall 18 .
- the housing bracket 12 includes an opening 22 for receiving a pivot support member 24 and an opening 26 through which a portion of a pedal arm 28 extends.
- the pivot support member 24 includes snap tabs 23 disposed on either side of the pivot support member 24 .
- the snap tabs 23 correspond to notches 25 formed on the side walls 16 to receive the snap tabs 23 in order for the pivot support member 24 to have a snap fit engagement with the housing bracket 12 .
- the pedal arm 28 includes a lower end 30 having a pedal pad 32 and an upper end 34 which is pivotally supported within the housing bracket 12 . A portion of the pedal arm 28 adjacent the upper end 34 extends through the opening 26 of the housing bracket 12 .
- the pedal arm 28 includes a pair of spaced apart and parallel tongs 36 is formed at the upper end 34 of the pedal arm 28 .
- the pair of tongs 36 defines a cavity 38 therebetween.
- Each of the pair of tongs 36 includes an outwardly extending generally circular boss 40 .
- Each of the pair of circular bosses 40 extends outwardly beyond the exterior surface of each of the pair of tongs 36 in the vehicle width direction.
- the circular bosses 40 define outer circumferential walls 41 .
- the interior of the housing bracket 12 includes a pair of spaced apart semi-circular forward bearing surfaces 42 formed on a forward side of the upper wall 18 in a vehicle longitudinal direction.
- the forward bearing surfaces 42 are formed opposite the opening 22 .
- the pivot support member 24 includes a pair of spaced apart semi-circular rear bearing surfaces 44 formed on a pair of shoulders 46 extending from either side of a base 45 .
- the rear bearing surfaces 44 are formed on a rear side of the pivot support member 24 in the vehicle longitudinal direction.
- the rear bearing surfaces 44 and the forward bearing surfaces 42 have a radius of curvature corresponding to the radius of the circular bosses 40 disposed on the exterior sides of each of the pair of tongs 36 .
- Each of the pair of bosses 40 is pivotally supported between the pivot support member 24 and the housing bracket 12 .
- the outer circumferential walls 41 of the pair of bosses 40 are pivotally supported between the rear bearing surfaces 44 and the forward bearing surfaces 42 such that the pedal arm pivots about a pivot axis P 1 .
- the pivotal support of the outer circumferential walls 41 of the bosses 38 between the forward bearing surfaces 42 and the rear bearing surfaces 44 allows the pedal arm 28 to pivot about pivot axis P 1 along a pedal path between an undepressed position, as best seen in FIGS. 2 and 5 , and a depressed position, as best seen in FIG. 6 .
- the rotation of the pedal arm 28 about the pivot axis P 1 is sensed by a position sensor 48 , such as a noncontacting position sensor.
- the position sensor 48 includes a plug 50 disposed at one end and a sensing portion 52 at an opposite end.
- the plug 50 connects to a wiring harness for transmission of a position signal detected by the sensing portion 52 in response to the movement of the pedal arm 28 about the pivot axis P 1 .
- the wiring harness transmits the position signal to a electronic control unit which controls an electric motor for movement of the pressure plate into and out of engagement of the clutch disc.
- a plurality of tabs 54 extend from the plug 50 and engage within recesses 56 formed in the housing bracket 12 upon insertion of the position sensor 48 into a slot 58 .
- the slot 58 is formed in the upper wall 18 of the housing bracket 12 .
- the slot 58 is formed so as to correspond with the cavity 38 formed between the pair of tongs 36 such that upon insertion of the position sensor 48 into the slot 58 the sensing portion 52 is disposed between the pair of tongs 36 , as best seen in FIG. 4 .
- the sensing portion 52 includes exiting coils and circuitry which produce an eddy current in a receiver coil.
- a blocker is mounted on the interior surface of the pair of tongs 36 adjacent the sensing portion 52 .
- the blocker blocks a signal from the exiting coil in proportion to a rotation of the pedal arm 28 about pivot axis P 1 to produce the position signal which is proportioned to the rotation and indicative of the displacement of the pedal arm 28 .
- the position signals generated by the position sensor 48 are transferred to the vehicle controls via the plug 50 and a wiring harness attached to the plug 50 . It is appreciated, of course, that various other types of positioning sensors may be utilized without deviation from the scope of the invention.
- the pedal assembly 10 includes a biasing device 60 for biasing the pedal arm 28 towards the undepressed position.
- the biasing device 60 is operable to realistically simulate a clutch pedal having a mechanical linkage by providing a variable pedal resistance over the pedal path from the undepressed position towards the depressed position.
- the solid line L 2 illustrates the force curve for the pedal assembly 10 having the biasing device 60 .
- the biasing device 60 provides a generally increasing resistance against pedal depression as the pedal is depressed from an initial (undepressed) position towards a disengagement point, generally 70 mm, at which the position, an electronic motor will disengage the pressure plate from the clutch disc based upon a position signal from the position sensor 48 .
- the biasing device 60 After the disengagement point, the biasing device 60 provides a generally decreasing pedal resistance along the remainder of the pedal path. Accordingly, the biasing device 60 provides a variable pedal resistance over the pedal path in which the force curve L 2 increases towards the disengagement point and decreases after the disengagement point to the remainder of the pedal path.
- the biasing device 60 includes a first end cap 62 , a biasing member 64 , and a second end cap 66 .
- the first end cap 62 includes a generally circular member 68 and a retaining wall 70 bounding the circumferential edge of the first circular member 68 .
- a first lobe 72 extends from the exterior surface of the circular member 68 of the first end cap 62 .
- the first lobe 72 has a generally semi-spherical shape having a slot 74 bisecting the first lobe 72 .
- the first end cap 62 is pivotally supported by a pivot pin 76 to the interior portion of the housing bracket 12 so as to pivot within the first support portion 78 about pivot axis P 2 .
- the interior portion of the housing bracket 12 includes a first support portion 78 formed as a depression or groove 80 having a corresponding shape to the first lobe 72 .
- the first support portion 78 includes a first protrusion 82 that extends generally outwardly from the first groove 80 such that upon engagement of the first lobe 72 with the first support portion 78 , the first protrusion 82 is received within the first slot 74 .
- the first support portion 78 includes a first angled wall 84 positioned above the first groove 80 and a first vertical wall 86 positioned below the first groove 80 .
- the first angled wall 84 and the first vertical wall 86 provide rotational limits to the biasing device 60 as described in greater detail below.
- the first end cap 62 includes a first shaft 88 .
- the first shaft 88 extends outwardly from the first circular member 68 on an interior surface which is opposite the exterior surface on which the first lobe 72 is formed.
- the compressible member 64 is a generally cylindrically shaped having a hollow interior 90 and is compressible along a compressible axis C.
- the biasing member 64 is formed of electrometric material and functions as a “rubber spring”. It is appreciated, of course, that the compressible member is not limited to such a configure and illustratively includes coil springs and double coils springs.
- the compressible member 64 extends along the compressible axis C coaxially with the first shaft 88 .
- the compressible member 64 includes a thinned portion 92 extending towards the hollow interior 90 .
- the thinned portion 90 is positioned at the central portion of the compressible member 64 along the compressible axis C.
- the compressible member 64 further includes bulge portions 94 which allow for the increase in the circumferential diameter of the compressible member 64 during compression.
- the thinned portion 92 allows for a controlled decrease in length of the compressible member 64 during compression.
- the compressible member 64 is positioned between the first end cap 62 and the second end cap 66 .
- the second end cap 66 includes a generally circular second member 96 having a stepped wall 98 extending outwardly from the circumferential edge of the first circular member 96 .
- the stepped wall 98 is expanded radially outwardly in a stepped manner so as to provide the stepped portion of the stepped wall 98 with a radius greater than the radius of the first circular member 68 .
- Providing the stepped portion of the stepped wall 98 with a radius greater than the radius of the first circular member 68 allows for the second end cap, specifically the stepped wall 98 , to accommodate for the increase in width of the compressible member 64 and to envelope the wall 70 of the first cap member 62 .
- a second lobe 100 extends from an exterior surface of the second circular member 96 and engages with a second support portion 102 formed on the pedal arm 28 .
- the second lobe has an elongated semi-circular shape extending in the vehicle width direction across the length of the second circular member 96 .
- the second support portion 102 includes a second groove 104 having a shape corresponding to the elongated semi-circular shape of the second lobe 100 .
- the second groove 104 has a radius corresponding to the radius of the second lobe 100 to allow for pivotal movement of the second lobe 100 within the second groove 102 .
- the second support portion 102 is provided between the upper end 34 and the lower end 30 of the pedal arm 28 .
- a pair of tabs 106 extend from either side of the pedal arm 28 so as to connect to either end of the second lobe 100 .
- a pivot pin 108 extends through the pair of tabs 106 and the second end cap 66 such that the second end cap 66 is pivotally supported within the second support portion 102 about pivot axis P 3 .
- the second support portion 102 includes a second angled wall 110 positioned below the second groove 104 and a second vertical wall 112 positioned above the second groove 104 . The second angled wall 110 and second vertical wall 112 act as limits to the pivotal rotation of the biasing device 60 .
- the second end cap 66 includes a hollow second shaft 114 .
- the hollow second shaft 114 extends outwardly from the second circular member 96 on an interior surface which is opposite the exterior surface on which the second lobe 100 is formed.
- the hollow second shaft 114 extends along the compressible axis C coaxially with the first shaft 88 and the compressible member 64 .
- the hollow second shaft 114 slidably receives a distal portion of the first shaft 88 .
- the compressible member 64 is prohibited from deforming or compressing in a direction other than along the compressible axis C defined by the coaxial relationship of the compressible member 64 , the first shaft 88 , and the second shaft 114 .
- a driver actuates the clutch pedal assembly 10 by depressing the pedal pad 32 .
- the depression of the pedal pad 32 causes the pedal arm 28 to pivot about the pivot axis P 1 as the pair of bosses 40 .
- the bosses 40 rotate guided by the first bearing surface 42 and the second bearing surface 44 of the pivot support member 24 .
- the rotation of the bosses 40 within the first bearing surface 42 and the second bearing surface 44 causes the pedal arm 28 to pivot which compresses the biasing device 60 in the direction of arrow A 1 .
- the biasing device 60 will simultaneously rotate about pivot axes P 2 and P 3 and will compress along the central compression axis defined by the compressible member 64 and the first shaft 88 and the second shaft 114 .
- the second cap 66 will rotate about pivot axis P 3 in the direction of arrow A 3 such that the second lobe 100 pivots within the second groove 104 .
- the first end cap 62 will pivot within the first pivot support portion 78 along the direction of arrow A 2 .
- the first lobe 72 will pivot within the first groove 80 . It is appreciated, of course, that the pivotal direction A 2 of first end cap 62 is opposite from the pivotal direction A 3 of the second end cap 66 .
- the rotation of the biasing device 60 and the simultaneous compression of the compressible member 64 provide the variable resistance as disclosed in the force curve L 2 of FIG. 1 such that upon reaching the disengagement point in the pedal path, the biasing device 60 will switch from an increasing resistance to a decreasing resistance as the biasing device 60 has rotated from the generally horizontal position as shown in FIG. 5 to the generally angled position of FIG. 6 .
- the first angled wall 84 acts as a limit of rotation for the first end cap 62 in which the exterior surface will abut the first angled wall 84 to limit further pivotal movement of the first end cap.
- the second angled wall 110 similarly will limit the pivotal rotation of the second end cap 66 by contact between the exterior surface of the second circular member 96 and the second angled wall 110 .
- the first angled wall 80 is positioned above the first groove 80 and the second angled wall 110 is positioned below the second groove 104 .
- an alternative embodiment of the inventive electronic clutch pedal assembly having the variable pedal resistance is generally illustrated at 210 .
- the second embodiment of the pedal assembly 210 is designed to take advantage of the opening formed in the vehicle through which the conventional mechanical linkage would be placed.
- the pedal assembly 210 includes a pedal arm 212 and a housing bracket 214 for mounting to the vehicle.
- the housing bracket 214 is formed of a plurality of stamped metallic plates having a welded connection. It is appreciated, of course, that the mounting bracket 214 is not limited to such configuration and the housing bracket 214 is operable to be formed by connection in other manners illustratively including bolting, ultrasonic welding, and adhesive.
- the housing bracket 214 includes a base portion 216 and a pair of side walls 218 .
- the base portion 216 and the pair of side walls 218 and 220 include a plurality of fastener openings for connection to the vehicle.
- the base portion 216 is itself only mounted to the vehicle with the pair of side walls 218 mounted to the base portion 216 .
- the pedal arm includes a lower end 222 having a pedal pad 224 and an upper end 226 pivotally supported between the pair of side walls 218 by a pivot pin 228 about a pivot axis P 1 .
- the pedal arm 212 includes a pedal gear 230 extending outwardly from the upper end 226 .
- the pedal gear 230 meshes with a position sensor 232 , specifically a sensor gear 234 .
- the position sensor 232 includes a plug 238 for attaching to a wiring harness and internal circuitry and coils.
- the sensor gear 234 is rotatable about an axis and in which depression of the pedal pad 224 will rotate the pedal arm 212 about the pivot pin 228 causing the pedal gear 230 to rotate the sensor gear 234 .
- the rotation of the sensor gear 234 allows the position sensor 232 to transform the physical rotation to a position signal through the use of coils and circuitry.
- the position sensor 232 then transmits the position signal to a wiring harness connected to the plug 238 in order to operate the clutch assemble of the vehicle.
- the pedal assembly 210 includes a biasing device 260 similar to the biasing device 60 of the first embodiment, and includes a first end cap 262 , a compressible device 264 , and a second end cap 266 .
- the pedal assembly 210 includes a second support portion 302 similar to the second support portion 102 of the first embodiment, and a first support portion 378 of the second embodiment differs from the first support portion 78 of the first embodiment in that the first support portion 278 is provided on an insert 410 .
- the first end cap 262 includes a first lobe 272 extends from the exterior surface of a circular member 268 of the first end cap 62 .
- the first lobe 272 has a generally semi-spherical shape having a slot 274 bisecting the first lobe 272 .
- the first end cap 262 is pivotally supported by a pivot pin 276 to the insert 410 so as to pivot within the first support portion 278 about pivot axis P 2 .
- the first support portion 278 is similar to the first support portion 78 except the first support portion 278 is formed on the insert 410 .
- the first support portion includes a groove 280 having a semi-spherical shape corresponding to the semi-spherical shape of the first lobe 272 .
- the first support portion 278 includes a first protrusion 282 that extends generally outwardly from the first groove 280 such that upon engagement of the first lobe 272 with the first support portion 278 , the first protrusion 282 is received within the first slot 274 .
- the insert 410 is formed as a removable part from the base portion 216 , and the first support portion 278 includes the first groove 280 , the first angled wall 284 , and the first vertical wall 286 .
- the insert 410 is inserted through an aperture 412 formed in the base portion 216 .
- the aperture 412 corresponds with an opening 414 formed in the vehicle 416 such as the firewall.
- the opening 414 is an opening for use with a conventional clutch pedal assembly having a mechanical linkage in which the mechanical linkage would extend through the opening 414 .
- the insert 410 includes a generally circular shape having a flange 418 extending radially from a forward side in the vehicle longitudinal direction. The flange 418 extends beyond the diameter of the opening 414 and the aperture 412 .
- a plurality of tabs 420 extend radially outward from a rearward side of the insert 410 .
- the plurality of tabs 420 correspond with a plurality of cutouts 422 formed in the base portion 216 and the vehicle 416 .
- the cutouts 422 extend inwardly from an edge of the aperture 416 and opening 414 .
- the plurality of tabs 420 are aligned with the plurality of cutouts 422 and the rearward side of the insert 410 first enters the opening 414 of the vehicle and the aperture 416 of the base portion 216 .
- the insert 410 is rotated such that the portion of the base portion 216 and the vehicle 416 is positioned between a forward surface of the plurality of tabs 420 and a rearward surface of the flange 262 to lock the insert 410 to the vehicle 414 and the base portion 216 .
- inventive pedal assemblies 10 and 210 are not limited to electronic clutch pedals.
- the inventive pedal assemblies 10 and 210 are optionally for use in controlling a vehicle operation illustratively including brake control, acceleration control, or any other operation which requires the pedal to stimulate the feel of a pedal having a mechanical linkage.
Abstract
Description
- This application claims priority to U.S. Provisional Patent Application Ser. No. 61/466,041 filed Mar. 22, 2011, the contents of which are incorporated herein by reference.
- The present invention relates to an electronic clutch pedal assembly and, more particularly, an electronic clutch pedal assembly having varying resistance.
- Recently electrically controlled clutch assemblies have been designed. Such assemblies use an external source, such as an electric motor, to move a pressure plate into and out of engagement with a clutch disc. The use of an electric motor to move the pressure plate eliminates the need of a mechanical linkage between the clutch pedal and the clutch assembly. Such a system allows for the “free rolling” of the drive train which improves fuel economy by removing efficiency losses in an unpowered drive train (e.g. the transmission in the neutral position while in motion but not under power). As the system no longer requires the mechanical linkage between the clutch pedal and the clutch assembly, the system allows for an electronic or “fly-by-wire” type clutch pedal assembly.
- In previously known electronic clutch pedal assembly a position sensor is used to sense the movement of the pedal arm to a position where the clutch would disengage to permit shifting. However, a significant drawback of these previously known electronic clutch pedal assemblies is that removal of the mechanical linkage between the pedal and the clutch assembly removes the resistance or “pedal feel” that a driver is typically accustomed to sense during clutch operation. As shown in
FIG. 1 , the dashed line L1 illustrates a force curve of a conventional clutch pedal assembly having a mechanical linkage between the clutch pedal and the clutch assembly. The conventional force curve rises slowly to a peak of about 50% of the travel path of the clutch pedal at which point the disengagement of the pressure plate with the clutch disc occurs. Upon the disengagement of the pressure plate with the clutch disc, the force curve tapers until the end of the travel path. Thus, it is desirable to provide an electronic clutch pedal assembly which provides a realistic “pedal feel” in which resistance rises until the disengagement point and resistance decreases after the disengagement point. - The present invention provides an electronic clutch pedal assembly for use with an automotive vehicle, which overcomes the above mentioned problems of the previously known electronic clutch pedal assemblies.
- In brief, the electronic clutch pedal assembly includes a housing bracket for mounting the pedal assembly to the vehicle, a pedal arm, and a biasing device. The pedal arm includes an upper end and a pedal pad at a lower end. The upper end of the pedal arm is pivotally supported within the housing bracket for movement along a pedal path between an undepressed position and a depressed position. The biasing device includes a first end cap pivotally attached to the housing bracket and a second end cap pivotally attached to the pedal arm. The biasing device includes a compressible member disposed between the first end cap and the second end cap. The compressible member biases the pedal arm towards the undepressed position. Upon depression of the pedal arm from the undepressed position towards the depressed position, the compressible member is compressed as the biasing device rotates so as to vary the resistance of the compressible member along the pedal path.
- One advantage of the present invention is that the electronic clutch pedal assembly is provided with a biasing device that is both rotatable and compressible. The simultaneous rotation of the biasing device and the compression of the compressible member varies the resistance over the pedal path so as to provides a″ clutch pedal which accurately simulates the “pedal feel” of a clutch pedal having a mechanical clutch linkage.
- A better understanding of the present invention will be had upon reference to the following detailed description when read in conjunction with the accompanying drawings, wherein like reference characters refer to like parts throughout the several views and in which:
-
FIG. 1 is a graphical representation of a force curve for a mechanically linked clutch pedal and the inventive electronic clutch pedal assembly; -
FIG. 2 is a front side perspective of the inventive pedal assembly; -
FIG. 3 is a rear side perspective of the inventive pedal assembly; -
FIG. 4 is a partially exploded rear side perspective view of the pedal assembly; -
FIG. 5 is a partial cross-sectional view illustrating the pedal assembly with the pedal arm in the undepressed position; -
FIG. 6 is a partial cross-sectional view illustrating the pedal assembly with the pedal arm in the depressed position; -
FIG. 7 is a side perspective view illustrating an alternative embodiment of the inventive pedal assembly; -
FIG. 8 is a rear perspective view of the alternative embodiment of the inventive pedal assembly; -
FIG. 9 is a partial cross-sectional view of the alternative pedal assembly with the pedal arm in the undepressed position; -
FIG. 10 is a partial cross-sectional view illustrating the alternative pedal assembly with the pedal arm in the depressed position; and -
FIG. 11 is a partial perspective exploded view of the insert and the biasing device of the alternative pedal assembly. - The present invention has utility as an electronic clutch pedal assembly for use with an automotive vehicle which overcomes the above mentioned disadvantages. The inventive electronic clutch pedal assembly includes a biasing device which simulates the feel of a clutch pedal having a conventional mechanical linkage to a clutch assembly. The biasing device includes a compressible member disposed between a first end cap and a second end cap. The first end cap is pivotally attached to a housing bracket and the second end cap is pivotally attached to a pedal arm. During depression of the pedal arm, the simultaneous rotation of the biasing device and the compression of the compressible member provide a variable pedal resistance over the pedal path which simulates a clutch pedal assembly having a conventional mechanical linkage.
- With reference to
FIGS. 1-4 , a first embodiment of an electronic clutch pedal assembly is generally illustrated at 10. Theclutch pedal assembly 10 includes ahousing bracket 12 for mounting thepedal assembly 10 to a portion of the automotive vehicle. In the illustrated example, thehousing bracket 12 is attached to a portion of the firewall (not shown) of the vehicle. - The
housing bracket 12 includes abase portion 14, a pair ofside walls 16, and a traverseupper portion 18 which extends between the pair ofside walls 16. Thebase portion 14 includes at least oneaperture 20 for securing thehousing bracket 12 to the vehicle using any known fastener or attaching means to secure one object to another illustratively including bolting, screwing, welding, or adhesive. - The
housing bracket 12 has a generally boxlike structure having an interior defined by thebase portion 14, pair ofside walls 16, and the traversingupper wall 18. Thehousing bracket 12 includes an opening 22 for receiving apivot support member 24 and an opening 26 through which a portion of apedal arm 28 extends. Thepivot support member 24 includessnap tabs 23 disposed on either side of thepivot support member 24. Thesnap tabs 23 correspond tonotches 25 formed on theside walls 16 to receive thesnap tabs 23 in order for thepivot support member 24 to have a snap fit engagement with thehousing bracket 12. - The
pedal arm 28 includes alower end 30 having apedal pad 32 and anupper end 34 which is pivotally supported within thehousing bracket 12. A portion of thepedal arm 28 adjacent theupper end 34 extends through the opening 26 of thehousing bracket 12. - The
pedal arm 28 includes a pair of spaced apart andparallel tongs 36 is formed at theupper end 34 of thepedal arm 28. The pair oftongs 36 defines acavity 38 therebetween. Each of the pair oftongs 36 includes an outwardly extending generallycircular boss 40. Each of the pair ofcircular bosses 40 extends outwardly beyond the exterior surface of each of the pair oftongs 36 in the vehicle width direction. Thecircular bosses 40 define outercircumferential walls 41. - As seen in
FIG. 2 , the interior of thehousing bracket 12 includes a pair of spaced apart semi-circular forward bearingsurfaces 42 formed on a forward side of theupper wall 18 in a vehicle longitudinal direction. The forward bearingsurfaces 42 are formed opposite theopening 22. - The
pivot support member 24 includes a pair of spaced apart semi-circular rear bearing surfaces 44 formed on a pair ofshoulders 46 extending from either side of abase 45. The rear bearing surfaces 44 are formed on a rear side of thepivot support member 24 in the vehicle longitudinal direction. The rear bearing surfaces 44 and the forward bearing surfaces 42 have a radius of curvature corresponding to the radius of thecircular bosses 40 disposed on the exterior sides of each of the pair oftongs 36. Each of the pair ofbosses 40 is pivotally supported between thepivot support member 24 and thehousing bracket 12. Specifically, the outercircumferential walls 41 of the pair ofbosses 40 are pivotally supported between the rear bearing surfaces 44 and the forward bearing surfaces 42 such that the pedal arm pivots about a pivot axis P1. The pivotal support of the outercircumferential walls 41 of thebosses 38 between the forward bearing surfaces 42 and the rear bearing surfaces 44 allows thepedal arm 28 to pivot about pivot axis P1 along a pedal path between an undepressed position, as best seen inFIGS. 2 and 5 , and a depressed position, as best seen inFIG. 6 . - The rotation of the
pedal arm 28 about the pivot axis P1 is sensed by aposition sensor 48, such as a noncontacting position sensor. Theposition sensor 48 includes aplug 50 disposed at one end and asensing portion 52 at an opposite end. Theplug 50 connects to a wiring harness for transmission of a position signal detected by the sensingportion 52 in response to the movement of thepedal arm 28 about the pivot axis P1. The wiring harness transmits the position signal to a electronic control unit which controls an electric motor for movement of the pressure plate into and out of engagement of the clutch disc. - A plurality of
tabs 54 extend from theplug 50 and engage withinrecesses 56 formed in thehousing bracket 12 upon insertion of theposition sensor 48 into aslot 58. Theslot 58 is formed in theupper wall 18 of thehousing bracket 12. Theslot 58 is formed so as to correspond with thecavity 38 formed between the pair oftongs 36 such that upon insertion of theposition sensor 48 into theslot 58 thesensing portion 52 is disposed between the pair oftongs 36, as best seen inFIG. 4 . - The sensing
portion 52 includes exiting coils and circuitry which produce an eddy current in a receiver coil. A blocker is mounted on the interior surface of the pair oftongs 36 adjacent thesensing portion 52. The blocker blocks a signal from the exiting coil in proportion to a rotation of thepedal arm 28 about pivot axis P1 to produce the position signal which is proportioned to the rotation and indicative of the displacement of thepedal arm 28. The position signals generated by theposition sensor 48 are transferred to the vehicle controls via theplug 50 and a wiring harness attached to theplug 50. It is appreciated, of course, that various other types of positioning sensors may be utilized without deviation from the scope of the invention. - With reference to
FIGS. 4-6 , thepedal assembly 10 includes abiasing device 60 for biasing thepedal arm 28 towards the undepressed position. The biasingdevice 60 is operable to realistically simulate a clutch pedal having a mechanical linkage by providing a variable pedal resistance over the pedal path from the undepressed position towards the depressed position. Specifically, as shown inFIG. 1 , the solid line L2 illustrates the force curve for thepedal assembly 10 having the biasingdevice 60. The biasingdevice 60 provides a generally increasing resistance against pedal depression as the pedal is depressed from an initial (undepressed) position towards a disengagement point, generally 70 mm, at which the position, an electronic motor will disengage the pressure plate from the clutch disc based upon a position signal from theposition sensor 48. After the disengagement point, the biasingdevice 60 provides a generally decreasing pedal resistance along the remainder of the pedal path. Accordingly, the biasingdevice 60 provides a variable pedal resistance over the pedal path in which the force curve L2 increases towards the disengagement point and decreases after the disengagement point to the remainder of the pedal path. - The biasing
device 60 includes afirst end cap 62, a biasingmember 64, and asecond end cap 66. Thefirst end cap 62 includes a generallycircular member 68 and a retainingwall 70 bounding the circumferential edge of the firstcircular member 68. Afirst lobe 72 extends from the exterior surface of thecircular member 68 of thefirst end cap 62. Thefirst lobe 72 has a generally semi-spherical shape having aslot 74 bisecting thefirst lobe 72. Thefirst end cap 62 is pivotally supported by apivot pin 76 to the interior portion of thehousing bracket 12 so as to pivot within thefirst support portion 78 about pivot axis P2. Specifically, the interior portion of thehousing bracket 12 includes afirst support portion 78 formed as a depression orgroove 80 having a corresponding shape to thefirst lobe 72. Thefirst support portion 78 includes afirst protrusion 82 that extends generally outwardly from thefirst groove 80 such that upon engagement of thefirst lobe 72 with thefirst support portion 78, thefirst protrusion 82 is received within thefirst slot 74. - The
first support portion 78 includes a firstangled wall 84 positioned above thefirst groove 80 and a firstvertical wall 86 positioned below thefirst groove 80. The firstangled wall 84 and the firstvertical wall 86 provide rotational limits to thebiasing device 60 as described in greater detail below. Thefirst end cap 62 includes afirst shaft 88. Thefirst shaft 88 extends outwardly from the firstcircular member 68 on an interior surface which is opposite the exterior surface on which thefirst lobe 72 is formed. - The
compressible member 64 is a generally cylindrically shaped having ahollow interior 90 and is compressible along a compressible axis C. In the illustrated embodiment the biasingmember 64 is formed of electrometric material and functions as a “rubber spring”. It is appreciated, of course, that the compressible member is not limited to such a configure and illustratively includes coil springs and double coils springs. - The
compressible member 64 extends along the compressible axis C coaxially with thefirst shaft 88. Thecompressible member 64 includes a thinnedportion 92 extending towards thehollow interior 90. The thinnedportion 90 is positioned at the central portion of thecompressible member 64 along the compressible axis C. Thecompressible member 64 further includesbulge portions 94 which allow for the increase in the circumferential diameter of thecompressible member 64 during compression. The thinnedportion 92 allows for a controlled decrease in length of thecompressible member 64 during compression. Thecompressible member 64 is positioned between thefirst end cap 62 and thesecond end cap 66. - The
second end cap 66 includes a generally circularsecond member 96 having a steppedwall 98 extending outwardly from the circumferential edge of the firstcircular member 96. The steppedwall 98 is expanded radially outwardly in a stepped manner so as to provide the stepped portion of the steppedwall 98 with a radius greater than the radius of the firstcircular member 68. Providing the stepped portion of the steppedwall 98 with a radius greater than the radius of the firstcircular member 68 allows for the second end cap, specifically the steppedwall 98, to accommodate for the increase in width of thecompressible member 64 and to envelope thewall 70 of thefirst cap member 62. - A
second lobe 100 extends from an exterior surface of the secondcircular member 96 and engages with asecond support portion 102 formed on thepedal arm 28. The second lobe has an elongated semi-circular shape extending in the vehicle width direction across the length of the secondcircular member 96. Thesecond support portion 102 includes asecond groove 104 having a shape corresponding to the elongated semi-circular shape of thesecond lobe 100. Specifically, thesecond groove 104 has a radius corresponding to the radius of thesecond lobe 100 to allow for pivotal movement of thesecond lobe 100 within thesecond groove 102. - The
second support portion 102 is provided between theupper end 34 and thelower end 30 of thepedal arm 28. A pair oftabs 106 extend from either side of thepedal arm 28 so as to connect to either end of thesecond lobe 100. Apivot pin 108 extends through the pair oftabs 106 and thesecond end cap 66 such that thesecond end cap 66 is pivotally supported within thesecond support portion 102 about pivot axis P3. Thesecond support portion 102 includes a secondangled wall 110 positioned below thesecond groove 104 and a secondvertical wall 112 positioned above thesecond groove 104. The secondangled wall 110 and secondvertical wall 112 act as limits to the pivotal rotation of the biasingdevice 60. - The
second end cap 66 includes a hollowsecond shaft 114. The hollowsecond shaft 114 extends outwardly from the secondcircular member 96 on an interior surface which is opposite the exterior surface on which thesecond lobe 100 is formed. The hollowsecond shaft 114 extends along the compressible axis C coaxially with thefirst shaft 88 and thecompressible member 64. The hollowsecond shaft 114 slidably receives a distal portion of thefirst shaft 88. - As the
first shaft 88 is slidably received within the hollow interior of thesecond shaft 114, thecompressible member 64 is prohibited from deforming or compressing in a direction other than along the compressible axis C defined by the coaxial relationship of thecompressible member 64, thefirst shaft 88, and thesecond shaft 114. - In order to facilitate a better understanding of the first embodiment of the present invention, the operation of the
pedal assembly 10 will now be described. During clutch pedal operation a driver actuates theclutch pedal assembly 10 by depressing thepedal pad 32. The depression of thepedal pad 32 causes thepedal arm 28 to pivot about the pivot axis P1 as the pair ofbosses 40. Thebosses 40 rotate guided by thefirst bearing surface 42 and thesecond bearing surface 44 of thepivot support member 24. The rotation of thebosses 40 within thefirst bearing surface 42 and thesecond bearing surface 44 causes thepedal arm 28 to pivot which compresses the biasingdevice 60 in the direction of arrow A1. - As the
pedal arm 28 is moved along the pedal path, the biasingdevice 60 will simultaneously rotate about pivot axes P2 and P3 and will compress along the central compression axis defined by thecompressible member 64 and thefirst shaft 88 and thesecond shaft 114. Specifically, thesecond cap 66 will rotate about pivot axis P3 in the direction of arrow A3 such that thesecond lobe 100 pivots within thesecond groove 104. Thefirst end cap 62 will pivot within the firstpivot support portion 78 along the direction of arrow A2. Specifically, thefirst lobe 72 will pivot within thefirst groove 80. It is appreciated, of course, that the pivotal direction A2 offirst end cap 62 is opposite from the pivotal direction A3 of thesecond end cap 66. - As the
pedal arm 28 is depressed from the undepressed position towards the depressed position, the rotation of the biasingdevice 60 and the simultaneous compression of thecompressible member 64 provide the variable resistance as disclosed in the force curve L2 ofFIG. 1 such that upon reaching the disengagement point in the pedal path, the biasingdevice 60 will switch from an increasing resistance to a decreasing resistance as the biasingdevice 60 has rotated from the generally horizontal position as shown inFIG. 5 to the generally angled position ofFIG. 6 . At or near the depressed position the firstangled wall 84 acts as a limit of rotation for thefirst end cap 62 in which the exterior surface will abut the firstangled wall 84 to limit further pivotal movement of the first end cap. The secondangled wall 110 similarly will limit the pivotal rotation of thesecond end cap 66 by contact between the exterior surface of the secondcircular member 96 and the secondangled wall 110. As the directions of pivotal rotation of thefirst end cap 62 and thesecond end cap 66 are in opposite directions, the firstangled wall 80 is positioned above thefirst groove 80 and the secondangled wall 110 is positioned below thesecond groove 104. - With reference to
FIGS. 7-11 , an alternative embodiment of the inventive electronic clutch pedal assembly having the variable pedal resistance is generally illustrated at 210. The second embodiment of thepedal assembly 210 is designed to take advantage of the opening formed in the vehicle through which the conventional mechanical linkage would be placed. Thepedal assembly 210 includes apedal arm 212 and ahousing bracket 214 for mounting to the vehicle. - The
housing bracket 214 is formed of a plurality of stamped metallic plates having a welded connection. It is appreciated, of course, that the mountingbracket 214 is not limited to such configuration and thehousing bracket 214 is operable to be formed by connection in other manners illustratively including bolting, ultrasonic welding, and adhesive. - The
housing bracket 214 includes abase portion 216 and a pair ofside walls 218. Thebase portion 216 and the pair ofside walls base portion 216 is itself only mounted to the vehicle with the pair ofside walls 218 mounted to thebase portion 216. - The pedal arm includes a
lower end 222 having apedal pad 224 and anupper end 226 pivotally supported between the pair ofside walls 218 by apivot pin 228 about a pivot axis P1. Thepedal arm 212 includes apedal gear 230 extending outwardly from theupper end 226. Thepedal gear 230 meshes with aposition sensor 232, specifically asensor gear 234. Theposition sensor 232 includes aplug 238 for attaching to a wiring harness and internal circuitry and coils. Thesensor gear 234 is rotatable about an axis and in which depression of thepedal pad 224 will rotate thepedal arm 212 about thepivot pin 228 causing thepedal gear 230 to rotate thesensor gear 234. The rotation of thesensor gear 234 allows theposition sensor 232 to transform the physical rotation to a position signal through the use of coils and circuitry. Theposition sensor 232 then transmits the position signal to a wiring harness connected to theplug 238 in order to operate the clutch assemble of the vehicle. - The
pedal assembly 210 includes abiasing device 260 similar to thebiasing device 60 of the first embodiment, and includes afirst end cap 262, acompressible device 264, and asecond end cap 266. Thepedal assembly 210 includes asecond support portion 302 similar to thesecond support portion 102 of the first embodiment, and afirst support portion 378 of the second embodiment differs from thefirst support portion 78 of the first embodiment in that thefirst support portion 278 is provided on aninsert 410. - As best seen in
FIG. 11 , thefirst end cap 262 includes afirst lobe 272 extends from the exterior surface of acircular member 268 of thefirst end cap 62. Thefirst lobe 272 has a generally semi-spherical shape having aslot 274 bisecting thefirst lobe 272. Thefirst end cap 262 is pivotally supported by apivot pin 276 to theinsert 410 so as to pivot within thefirst support portion 278 about pivot axis P2. Specifically, thefirst support portion 278 is similar to thefirst support portion 78 except thefirst support portion 278 is formed on theinsert 410. The first support portion includes agroove 280 having a semi-spherical shape corresponding to the semi-spherical shape of thefirst lobe 272. Thefirst support portion 278 includes afirst protrusion 282 that extends generally outwardly from thefirst groove 280 such that upon engagement of thefirst lobe 272 with thefirst support portion 278, thefirst protrusion 282 is received within thefirst slot 274. - The
insert 410 is formed as a removable part from thebase portion 216, and thefirst support portion 278 includes thefirst groove 280, the first angled wall 284, and the first vertical wall 286. Theinsert 410 is inserted through anaperture 412 formed in thebase portion 216. Theaperture 412 corresponds with anopening 414 formed in thevehicle 416 such as the firewall. Theopening 414 is an opening for use with a conventional clutch pedal assembly having a mechanical linkage in which the mechanical linkage would extend through theopening 414. Theinsert 410 includes a generally circular shape having aflange 418 extending radially from a forward side in the vehicle longitudinal direction. Theflange 418 extends beyond the diameter of theopening 414 and theaperture 412. A plurality oftabs 420 extend radially outward from a rearward side of theinsert 410. The plurality oftabs 420 correspond with a plurality ofcutouts 422 formed in thebase portion 216 and thevehicle 416. Thecutouts 422 extend inwardly from an edge of theaperture 416 andopening 414. - In order to install the
insert 410 into thevehicle 416 and thebase portion 216, the plurality oftabs 420 are aligned with the plurality ofcutouts 422 and the rearward side of theinsert 410 first enters theopening 414 of the vehicle and theaperture 416 of thebase portion 216. Once the plurality oftabs 420 have passed through theaperture 412 and are beyond the rearward face of thebase portion 216, theinsert 410 is rotated such that the portion of thebase portion 216 and thevehicle 416 is positioned between a forward surface of the plurality oftabs 420 and a rearward surface of theflange 262 to lock theinsert 410 to thevehicle 414 and thebase portion 216. - It is appreciated, of course, that the
inventive pedal assemblies inventive pedal assemblies - The present invention has been described in an illustrative manner. It is to be understood that the terminology which has been used is intended to be in the nature of words of description rather than of limitation. Many modifications and variations of the present invention are possible in light of the above teachings. Therefore, within the scope of the appended claims, the present invention may be practiced other than as specifically described.
Claims (15)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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US13/426,026 US8650984B2 (en) | 2011-03-22 | 2012-03-21 | Electronic clutch pedal assembly having varying resistance |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US201161466041P | 2011-03-22 | 2011-03-22 | |
US13/426,026 US8650984B2 (en) | 2011-03-22 | 2012-03-21 | Electronic clutch pedal assembly having varying resistance |
Publications (2)
Publication Number | Publication Date |
---|---|
US20120240716A1 true US20120240716A1 (en) | 2012-09-27 |
US8650984B2 US8650984B2 (en) | 2014-02-18 |
Family
ID=46876179
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US13/426,026 Active US8650984B2 (en) | 2011-03-22 | 2012-03-21 | Electronic clutch pedal assembly having varying resistance |
Country Status (3)
Country | Link |
---|---|
US (1) | US8650984B2 (en) |
DE (1) | DE112012001380T5 (en) |
WO (1) | WO2012127315A1 (en) |
Cited By (3)
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US20170351291A1 (en) * | 2016-06-03 | 2017-12-07 | Ford Global Technologies, Llc | Clutch pedal with force simulation |
EP3267281A3 (en) * | 2016-07-06 | 2018-07-25 | ZF Friedrichshafen AG | Pedal power simulation assembly and motor vehicle |
FR3066286A1 (en) * | 2017-05-10 | 2018-11-16 | Peugeot Citroen Automobiles Sa | CONTROL ARRANGEMENT FOR DRIVING STATIONS OF A MOTOR VEHICLE |
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CN106710357B (en) * | 2015-11-12 | 2019-07-12 | 北京宣爱智能模拟技术股份有限公司 | A kind of clutch simulator |
DE202016103193U1 (en) | 2016-06-03 | 2016-09-02 | Ford Global Technologies, Llc | Device for force simulation on an actuating element of a vehicle and electrically actuated clutch system |
DE102016209829A1 (en) | 2016-06-03 | 2017-12-07 | Ford Global Technologies, Llc | Device for force simulation on an actuating element of a vehicle and electrically actuated clutch system |
FR3052570B1 (en) * | 2016-06-09 | 2019-05-10 | Peugeot Citroen Automobiles Sa | CLUTCH PEDAL SYSTEM WITH EFFORT RESTITUTION FOR ELECTRIC CLUTCH CONTROL |
US10359802B2 (en) | 2016-08-22 | 2019-07-23 | Cts Corporation | Variable force electronic vehicle clutch pedal |
DE102020211085B4 (en) | 2020-09-02 | 2022-07-28 | Volkswagen Aktiengesellschaft | Brake pedal system with a braking force simulator, brake-by-wire braking system and motor vehicle |
DE102021104357B4 (en) * | 2021-02-24 | 2023-10-05 | Dr. Ing. H.C. F. Porsche Aktiengesellschaft | Motor vehicle with sound and heat insulating encapsulation of a pedal bracket |
DE102021119446A1 (en) * | 2021-07-27 | 2023-02-02 | Zf Active Safety Gmbh | brake pedal module |
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Also Published As
Publication number | Publication date |
---|---|
US8650984B2 (en) | 2014-02-18 |
WO2012127315A1 (en) | 2012-09-27 |
DE112012001380T5 (en) | 2013-12-24 |
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